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Bibliography 213





                      41. P.M. DeVries, F. Viégas, M. Wattenberg, B.J. Meade,  53. J.-M. Peyrat, M. Sermesant, X. Pennec, H.
                          Deep learning of aftershock patterns following  Delingette, C. Xu, E. McVeigh, N. Ayache, Towards
                          large earthquakes, Nature 560 (7720) (2018) 632.  a statistical atlas of cardiac fiber structure, in:
                      42. A.M. Katz, Physiology of the Heart, Lippincott  International Conference on Medical Image
                          Williams & Wilkins, 2010.                  Computing and Computer-Assisted Intervention,
                      43. M.P. Nash, P.J. Hunter, Computational mechanics  Springer, 2006, pp. 297–304.
                          of the heart, Journal of Elasticity and the Physical  54. H. Lombaert, J.-M. Peyrat, P. Croisille, S. Rapacchi,
                          Science of Solids 61 (1–3) (2000) 113–141.  L. Fanton, F. Cheriet, P. Clarysse, I. Magnin, H.
                      44. J.M. Guccione, G.S. Kassab, M.B. Ratcliffe, et al.,  Delingette, N. Ayache, Human atlas of the cardiac
                          Computational Cardiovascular Mechanics,    fiber architecture: study on a healthy population,
                          Springer, 2010.                            IEEE Transactions on Medical Imaging 31 (7)
                      45. M.Sermesant,H.Delingette,N.Ayache, An      (2012) 1436–1447.
                          electromechanical model of the heart for image  55. T. Arts, R.S. Reneman, P.C. Veenstra, A model of the
                          analysis and simulation, IEEE Transactions on
                          Medical Imaging 25 (5) (2006) 612–625.     mechanics of the left ventricle, Annals of
                      46. V.Y. Wang, H. Lam, D.B. Ennis, B.R. Cowan, A.A.  Biomedical Engineering 7 (3–4) (1979) 299–318.
                          Young, M.P. Nash, Modelling passive diastolic  56. I.J.LeGrice,B.Smaill, L. Chai,S.Edgar,J.Gavin,P.J.
                          mechanics with quantitative mri of cardiac  Hunter, Laminar structure of the heart: ventricular
                          structure and function, Medical Image Analysis  myocyte arrangement and connective tissue
                          13 (5) (2009) 773–784.                     architecture in the dog, American Journal of
                      47. R. Chabiniok, V.Y. Wang, M. Hadjicharalambous, L.  Physiology. Heart and Circulatory Physiology
                          Asner, J. Lee, M. Sermesant, E. Kuhl, A.A. Young, P.  269 (2) (1995) H571–H582.
                          Moireau, M.P. Nash, et al., Multiphysics and  57. J.D.Bayer,R.C.Blake,G.Plank,N.A.Trayanova,A
                          multiscale modelling, data–model fusion and  novel rule-based algorithm for assigning
                          integration of organ physiology in the clinic:  myocardial fiber orientation to computational
                          ventricular cardiac mechanics, Interface Focus  heart models, Annals of Biomedical Engineering
                          6 (2) (2016) 20150083.                     40 (10) (2012) 2243–2254.
                      48. K.Kunzelman,D.R.Einstein, R. Cochran,  58. J.L. Titus, Normal anatomy of the human cardiac
                          Fluid-structure interaction models of the mitral  conduction system, Anesthesia and Analgesia
                          valve: function in normal and pathological states,  52 (4) (1973) 508–514.
                          Philosophical Transactions of the Royal Society of  59. J. Bigger, W. Mandel, Effect of lidocaine on
                          London. Series B, Biological Sciences 362 (1484)  conduction in canine Purkinje fibers and at the
                          (2007) 1393–1406.                          ventricular muscle–Purkinje fiber junction, The
                      49. D.D. Streeter Jr, H.M. Spotnitz, D.P. Patel, J. Ross Jr,  Journal of Pharmacology and Experimental
                          E.H. Sonnenblick, Fiber orientation in the canine  Therapeutics 172 (1970) 239–254.
                          left ventricle during diastole and systole,  60. D.Durrer, R.T. VanDam,G.Freud,M.Janse,F.
                          Circulation Research 24 (3) (1969) 339–347.  Meijler, R. Arzbaecher, Total excitation of the
                      50. F.J. Vetter, A.D. McCulloch, Three-dimensional  isolated human heart, Circulation 41 (6) (1970)
                          analysis of regional cardiac function: a model of  899–912.
                          rabbit ventricular anatomy, Progress in Biophysics
                                                                 61. D.A. Rawling, R.W. Joyner, E.D. Overholt,
                          and Molecular Biology 69 (2–3) (1998) 157–183.
                      51. M.Pop,M.Sermesant,T.Mansi,E.Crystal,S.     Variations in the functional electrical coupling
                          Ghate, J.-M. Peyrat, I. Lashevsky, B. Qiang, E.  between the subendocardial Purkinje and
                          McVeigh, N. Ayache, et al., Correspondence  ventricular layers of the canine left ventricle,
                          between simple 3-d mri-based computer models  Circulation Research 57 (2) (1985) 252–261.
                          and in-vivo ep measurements in swine with  62. R.J.Prineas,R.S.Crow, Z.-M.Zhang,The
                          chronic infarctions, IEEE Transactions on  Minnesota Code Manual of Electrocardiographic
                          Biomedical Engineering 58 (12) (2011) 3483–3486.  Findings, Springer Science & Business Media,
                      52. S. Nielles-Vallespin, C. Mekkaoui, P. Gatehouse,  2009.
                          T.G. Reese, J. Keegan, P.F. Ferreira, S. Collins, P.  63. M.Shenasa,G.Hindricks,D.J.Callans,J.M.Miller,
                          Speier, T. Feiweier, R. de Silva, et al., In vivo  M.E. Josephson, Cardiac Mapping, Wiley Online
                          diffusion tensor mri of the human heart:   Library, 2003.
                          reproducibility of breath-hold and     64. R. FitzHugh, Impulses and physiological states in
                          navigator-based approaches, Magnetic Resonance  theoretical models of nerve membrane,
                          in Medicine 70 (2) (2013) 454–465.         Biophysical Journal 1 (1961) 445–466.
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